Akerman K E, Wikström M K, Saris N E
Biochim Biophys Acta. 1977 Jan 21;464(2):287-94. doi: 10.1016/0005-2736(77)90004-9.
The kinetic plot (initial rate of Ca2+ transport versus concentration) of mitochondrial Ca2+ transport is hyperbolic in a sucrose medium. The plot becomes sigmoidal in the presence of competitive inhibitors of Ca2+ binding to low affinity sites of the membrane surface such as Mg2+ and K+. The plot also becomes sigmoidal in the presence of Ba2+. Ba2+ is a competitive inhibitor of both Ca2+ transport and Ca2+ binding to the low affinity sites. The 5i for the inhibition of Ca2+ transport by Ba2+ increases in the presence of K+ and Mg2+, which suggests a competition for the low affinity sites between the cations. The plot is still hyperbolic in the presence of La3+, which inhibits Ca2+ transport competitively. Ruthenium red which is a pure non-competitive inhibitor of mitochondrial Ca2+ transport, does not affect the shape of the kinetic plot. These results indicate that the surface potential, which depends on the ions bound to the low affinity sites, determines whether the kinetics of Ca2+ uptake in mitochondria is sigmoidal or hyperbolic.
在蔗糖介质中,线粒体钙转运的动力学曲线(钙转运的初始速率与浓度关系)呈双曲线。在存在与膜表面低亲和力位点结合的钙的竞争性抑制剂(如镁离子和钾离子)时,该曲线变为S形。在钡离子存在时,曲线也变为S形。钡离子是钙转运和钙与低亲和力位点结合的竞争性抑制剂。在钾离子和镁离子存在时,钡离子抑制钙转运的50%抑制浓度增加,这表明阳离子之间对低亲和力位点存在竞争。在镧离子存在时,曲线仍为双曲线,镧离子竞争性抑制钙转运。钌红是线粒体钙转运的纯非竞争性抑制剂,不影响动力学曲线的形状。这些结果表明,取决于与低亲和力位点结合的离子的表面电位,决定了线粒体中钙摄取的动力学是S形还是双曲线形。